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81.
倭肯河上游两种林型枯落物和土壤持水特性   总被引:2,自引:0,他引:2  
为探讨不同树种组成的林分持水特性,采用实地调查与室内浸泡法,对倭肯河上游杂木林和阔叶红松林枯落物的蓄积量和持水特性进行测定,采用环刀法对土壤持水量进行测定。结果表明:两种林型枯落物厚度约7.5 cm,蓄积量为8.07~9.85 t/hm2,最大持水量相当于可吸收2.0~2.5 mm的降水,有效拦蓄量相当于可吸收1.0 mm的降水。枯落物持水量与浸水时间呈对数函数关系(R 2>0.9843),吸水速率与浸水时间呈幂函数关系(R 2>0.9999)。两种林型土壤总孔隙度范围为50.32%~51.41%,非毛管孔隙度范围为3.00%~4.44%,土壤最大持水量范围为1509.74~1542.17 t/hm2,土壤有效持水量范围为89.96~133.32 t/hm2。阔叶红松林密度低,生产力高,枯落物层最大持水量、有效拦蓄量,土壤层最大持水量、有效持水量均高于杂木林,但各评价指标差异不显著(p>0.05)。两林地持水能力中等偏低,以提高森林水源涵养为目标时,可维持现有结构,进一步开展密度调整研究。  相似文献   
82.
A field experiment conducted on rapeseed (Brassica juncea L.) during 2005–2006 in a typical lateritic soil (Alfisol) of West Bengal, India revealed that sources of sulfur viz. gypsum and magnesium sulfate and levels of sulfur (0, 20, 40, 60 kg S ha?1) have significant influence on grain yield, total biological yield, sulfur concentration in grain and stover, total sulfur uptake, oil content and oil yield and chlorophyll content. The maximum grain yield (18.28 q ha?1) and oil yield (8.59 q ha?1) was obtained with magnesium sulfate followed by gypsum yielded the grain yield of 17.99 q ha?1 and oil yield of 8.22 q ha?1 at 40 kg S ha?1. Overall, the best performance was recorded when sulfur was applied at 40 kg S ha?1 either as magnesium sulfate or gypsum. Results revealed that magnesium sulfate may be considered as the better source of sulfur than gypsum to raise the mustard crop in sulfur deficient acidic red and lateritic soils of West Bengal and if farmers apply either magnesium sulfate or gypsum to soils, the possible deficiency of sulfur and magnesium/calcium in soils and plants can be avoided.  相似文献   
83.
以红松松子壳为原料,采用连续热解装置研究了热解反应温度和时间对生物油得率的影响规律,在反应温度为450℃、反应时间为6 min时,生物油得率可达到40.74%,热值可达到22.66 MJ/kg。采用气相色谱质谱联用仪对生物油成分进行了分析,其成分以酚类为主,质量分数约为33.5%;选用HZSM-5及NiO/HZSM-5分子筛催化剂对热解重质油部分分别进行催化改性试验,结果表明:经NiO/HZSM-5分子筛催化剂催化后其中高沸点有机物质量分数降低约13个百分点;其黏度由原来的约3 290 mPa·s大幅度地降低至450 mPa·s,热值则由原来的约26.16 MJ/kg增加到30.33 MJ/kg,增加了16%,同时提高了重质油的燃烧性和稳定性;负载物氧化镍(NiO)的添加提高了HZSM-5催化剂的抗积碳能力。该研究也为后续生物油改性提供了参考。  相似文献   
84.
为探究纯植物油作为压燃内燃机替代燃料的雾化问题,利用纹影法对葵花籽纯植物油和普通柴油在不同试验条件下的喷雾特性进行了对比研究,分析了燃油温度和喷射压力对2种燃料喷雾贯穿距、喷雾锥角和空气卷吸作用的影响。研究结果表明:葵花籽油的喷雾贯穿距和喷雾锥角均随着喷射压力和燃油温度的升高而增大,与柴油的变化规律相似。温度从60℃升高到90℃,喷油压力为60 MPa时喷雾贯穿距和喷雾锥角的平均增幅分别为12.4%和9.6%,120 MPa时分别为5%和4.14%;喷油压力从60 MPa升高到120 MPa,温度为60℃时喷雾贯穿距和喷雾锥角的平均增幅分别为39.7%和16.7%,90℃时分别为30.6%和10.9%;当喷射压力、背景压力和燃油温度相同时,葵花籽油比柴油具有更大的贯穿距和更小的喷雾锥角,且喷雾贯穿距平均增幅为22.5%,喷雾锥角平均降幅为60.3%;升高燃油温度和升高喷射压力都会增强雾注的空气卷吸作用,但葵花籽油的空气卷吸作用要明显弱于普通柴油。研究结果可为纯植物油作为内燃机替代燃料的可行性研究提供参考。  相似文献   
85.
Commercial grade zinc (Zn) sulfate hepta hydrate (ZnSHH) is the most widely used source of Zn in India and several other countries for amelioration of Zn deficiency in crops. However, it releases water of hydration at temperature above 30°C and forms lumps on storage, which make it difficult to handle it and apply in fields. Therefore, conditioning of ZnSHH with ZnO and neem oil reduces the release of water of hydration and prevents lumps formation and can be well stored. Field experiments were conducted at the research farm of the Indian Agricultural Research Institute, New Delhi, India during rice growing seasons (July-November) of 2009 and 2010 to study the effect of conditioning ZnSHH with ZnO and neem oil on growth, productivity and Zn fortification of rice (Oryza sativa) grain and uptake by Basmati rice ‘Pusa 1121’. The experiment was conducted in a randomized block design with 3 replications comprised of 9 treatments of Zn fertilization. The present study shows that when conditioned with 2% ZnO and 4% neem oil ZnSHH improved yield attributes, grain and straw yields, Zn uptake and partial factor productivity (PFP), agronomic efficiency (AE), recovery efficiency (RE), and physiological efficiency (PE) of Zn in Basmati rice ‘Pusa 1121’. In general, ZnO was inferior to ZnSHH. Application of ZnSHH conditioned with 2% ZnO and 4% neem oil can be a better source of Zn for transplanted puddled Basmati rice on Zn deficient soils.  相似文献   
86.
The distribution in soil and plant uptake of zinc (Zn) and lead (Pb) as influenced by pine bark-goat manure (PBG) compost additions were investigated from the soils artificially contaminated with Zn or Pb ions using maize (Zea mays L.) as a test crop. Soils were amended with four rates of pine bark-goat manure compost (0, 50, 100, and 200 tons ha?1) and four rates (0, 300, 600 and 1200 mg kg?1) of Zn or Pb. Maize was planted and grown for 42 days. At harvest, plants samples were analyzed for Zn and Pb concentration. Soils samples were analyzed for pH, extractable and diethylene triamine pentaacetic acid (DTPA) extractable Zn and Pb. Extractable Zn and Pb was lower in PBG compost amended soils than in unamended soils and steadily declined with increasing amount of compost applied. The extractable fraction for Zn dropped by 62.2, 65.0 and 44.6% for 300, 600 and 1200 mg Zn kg?1, respectively when 200 t ha?1 of PBG compost was applied. Metal uptake by maize plants were directly related to the rate of applied heavy metal ions with greater concentrations of metals ions found where metal ions were added to non-amended soils.  相似文献   
87.
基于近红外光谱技术的茶油原产地快速鉴别   总被引:2,自引:3,他引:2  
为研究茶油原产地溯源问题,维护其市场秩序,促进公平竞争。该文利用近红外光谱技术采集湖南、江西、安徽和浙江4个不同产地茶油的光谱数据,并运用 Savitzky-Golay 平滑(savitzky-golay, SG)、多元散射校正(multiplicative scatter correction, MSC)、一阶导数(first derivation, FD)和矢量归一化(vector normalization, VN)等4种方法对其进行预处理。采用偏最小二乘法(partial least squares, PLS)提取最佳主成分,构建 PLS 回归模型;同时,采用主成分分析(principal component analysis, PCA)和 PLS 算法提取最佳主成分,作为 BP 人工神经网络(BP artificial neural network, BPANN)输入变量,构建 PCA-BPANN 和 PLS-BPANN 模型。以验证集相关系数 RP 和验证集均方根误差 RMSEP 为模型的评价指标,分别优选最佳 PLS 和 BPANN 模型。试验结果表明,SG-PLS-DA 和 SG-PLS-BPANN-DA 模型对未知样本的整体分类准确率均大于90%。其中,SG-PLS-BPANN-DA 的鉴别效果优于前者,其建模集相关系数 RC、均方根误差 RMSEC 分别为0.974、0.170,验证集相关系数 RP、均方根误差 RMSEP 分别为0.972、0.172,对上述两类样本集的总体分类准确率分别为98.15%、95.83%,该模型能较准确鉴别茶油原产地。研究结果可为快速辨别茶油原产地提供参考。  相似文献   
88.
为了解水氮耦合对新疆北部石河子地区滴灌复播油葵光合特性和土壤水分利用的影响,以当地油葵主栽早熟品种新葵杂五号为试料,在滴灌条件下进行水氮两因素三水平完全处理小区试验。结果表明,滴灌复播油葵耕层耗水量随生育进程的变化规律为:开花期现蕾期灌浆期苗期成熟期,现蕾期和开花期是2个需水关键期,尤其开花期对水分最敏感;耕层(0~40cm)耗水量随灌水定额和施氮量的增加而增大;灌水量3 000 m~3·hm~(-2)、纯施氮量232 kg·hm~(-2)的水氮组合在土壤水分利用效率和油葵产量方面表现出显著的耦合效果。本研究为寻求滴灌复播油葵高效水氮优化方案和水氮高效利用提供了科学依据。  相似文献   
89.
Land Information Systems (LIS) provide a foundation for supporting decision‐making across a broad spectrum of natural resource applications: agronomic, environmental, engineering and public good. Typically, LIS constitute a computerized database repository holding geospatial components, ‘mapping unit’ geometry and related georeferenced materials such as satellite imagery, meteorological observations and predictions and scanned legacy mapping. Coupled with the geospatial data are associated property, semantic and metadata, representing a range of thematic properties and characteristics of the land and environment. This paper provides examples of recent developments of national and regional LIS, presenting applications for land resource capabilities and management. These focus on the ‘Land Information System’ (LandIS) for England and Wales, and the ‘World Soil Survey Archive and Catalogue’ (WOSSAC) and consider Agricultural Land Classification in Wales, an Irish land and soil information system, and a scheme to optimize land suitability for application of palm oil biofertilizers in Malaysia. Land Information Systems support purposeful environmental interpretations, drawing on soil and related thematic data, offering insight into land properties, capabilities and characteristics. The examples highlight the practical transferability and extensibility of technical and methodological approaches across geographical contexts. This assessment identifies the value of legacy‐based natural resource inventories that can be interoperated with other contemporary sources of information, such as satellite imagery.  相似文献   
90.
针叶林混交阔叶树是改善土壤肥力、增强林地养分循环的重要措施,而混交效应受到针叶树种自身特性的影响,马尾松(Pinus massoniana)和湿地松(P.elliottii)是亚热带地区广泛种植的针叶树种,但目前2种针叶林对阔叶树混交的响应特征还不清楚。选取马尾松、湿地松纯林以及木荷(Schima superba)补植后形成的马尾松—木荷和湿地松—木荷混交林为研究对象,采集剖面土壤样品,测定土壤容重、有机碳(OC)、全氮(TN)和全磷(TP)含量,计算碳氮磷储量及化学计量特征,比较不同森林类型间的异同。混交阔叶树显著增加了马尾松林0—60cm各土层OC含量,而湿地松纯林与其混交林间OC含量无显著差异。同时,混交增加了2种针叶林土壤TN含量。马尾松林混交后0—60cm土层碳储量显著增加95.8%,而混交阔叶树对湿地松林土壤碳储量无显著影响。混交阔叶树后马尾松和湿地松林0—60cm土壤总氮储量分别增加了15.8%和28.4%,但混交对土壤磷储量无显著影响。混交显著增加了马尾松林0—40cm各土层C/N,而降低了湿地松林0—10cm土层C/N。混交阔叶树后马尾松林0—20cm土层C/P和0—10cm土层N/P显著增加,而混交仅增加湿地林0—10cm土层N/P。混交阔叶树增加了针叶林土壤氮储量,但对磷储量无显著影响,同时混交改变了土壤碳氮磷生态化学计量特征。与湿地松林相比,马尾松林土壤养分含量、储量及其化学计量特征对混交的响应更敏感。  相似文献   
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